Alan S. Morris
Papers
41
Total Citations
628
H-Index
13
About
Alan S. Morris is a distinguished robotics and control systems researcher whose career has centered on advancing intelligent control strategies for complex robotic manipulators. His work spans several interconnected domains, including flexible and elastic robot dynamics, multi-robot trajectory planning, and the application of soft computing techniques — such as neural networks, fuzzy logic, and genetic algorithms — to challenging control problems. Morris made early contributions to neuro-adaptive control of robotic manipulators as far back as 1993, recognizing the power of neural networks to handle uncertainty in dynamic systems. His 1996 book on neural networks for robotic control further cemented his role as an educator and synthesizer in the field. A particularly impactful strand of his research involves collaborative robot manipulators sharing workspaces; his fuzzy-GA trajectory planning approach (2006, 86 citations) elegantly addressed the complex problem of robots treating one another as unpredictable moving obstacles. His work on flexible-link and elastic-joint manipulators, employing singular perturbation techniques and GA-tuned fuzzy controllers, has been widely cited by researchers tackling the notorious complexity of underactuated robotic systems. With foundational contributions accumulating hundreds of citations across three decades, Morris remains an influential figure in intelligent robotics research.
Research Focus
Key Achievements
Top Papers
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- 5Neuro-adaptive control of robotic manipulators46 citations · 1993
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- 7Neural networks for robotic control : theory and applications25 citations · 1996
- 8Trajectory planning of multiple coordinating robots using genetic algorithms24 citations · 1996
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- 10Static and dynamic modelling of a two-flexible-link robot manipulator22 citations · 1996